首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Large-Amplitude Mountain Waves in the Mesosphere Accompanying Weak Cross-Mountain Flow During DEEPWAVE Research Flight RF22
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Large-Amplitude Mountain Waves in the Mesosphere Accompanying Weak Cross-Mountain Flow During DEEPWAVE Research Flight RF22

机译:在Deepwave研究飞行期间,伴随跨山流动的大幅度山波伴随着弱山流量RF22

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Mountain wave (MW) propagation and dynamics extending into the upper mesosphere accompanying weak forcing are examined using in situ and remote-sensing measurements aboard the National Science Foundation/National Center for Atmospheric Research Gulfstream V (GV) research aircraft and the German Aerospace Center Falcon. The measurements were obtained during Falcon flights FF9 and FF10 and GV Research Flight RF22 of the Deep Propagating Gravity Wave Experiment (DEEPWAVE) performed over Mount Cook, New Zealand, on 12 and 13 July 2014. In situ measurements revealed both trapped lee waves having zonal wavelengths of λ_x ~ 12 km and less, and larger-scale, vertically propagating MWs primarily at λ_x ~ 20-60 km and ~100-300 km extending from west to ~400 km east of Mount Cook. GV Rayleigh lidar measurements from 25- to 60-km altitudes showed that the weak forcing and zonal winds that increased from ~12 m/s at 12 km to ~40 and 130 m/s at 30 and 55 km, respectively, enabled largely linearMW propagation and strong amplitude growth with altitude into the mesosphere. GV Na lidar and airglow imager measurements revealed an extensive MW response from ~70 to 87 km with large amplitudes and vertical displacements at λ_x ~ 40-300 km but with both decreasing with altitude approaching a critical level near 90 km. These MWs exhibited large-scale MW breaking and among the largest sustained momentum fluxes observed in the mesosphere. UK Met Office Unified Model simulations of the RF22 MW event captured many aspects of the observed MW field and revealed that despite the dominant large-scale MW responses in the stratosphere, the major momentum fluxes accompanied smaller-scale waves.
机译:山景(MW)延伸到伴随弱强制上患有弱势效果的山波的传播和动力学在国家科学基金会/国家大气研究湾(GV)研究飞机和德国航空航天中心Falcon 。在FF9和FF10和GV研究飞行期间获得的测量是在2014年7月12日和13日在新西兰山上进行的深度传播重力波实验(DeepWave)的GV研究飞行RF22。原位测量显示出具有Zonal的被困的李波。波长为λ_x〜12公里,更大,更大,垂直于λ_x〜20-60 km垂直传播,〜100-300公里从西部延伸到厨师东部〜400公里。从25到60公里的海拔地区的GV Rayleigh Lidar测量结果表明,在30千米至约40米和130米/秒的弱势强制和Zonal风在30和55公里处,在很大程度上是Linearmw的繁殖和强大振幅增长,海拔高度进入介体。 GV NA LIDAR和AIRGLOW成像仪测量显示了大约70至87公里的广泛MW响应,λ_x〜40-300公里的大幅度和垂直位移,但随着海拔地区的降低,接近90公里的临界水平。这些MWS表现出大规模的MW突破,并且在介质层中观察到的最大持续动量助核。英国符合RF22 MW事件的统一模型模拟捕获了观察到的MW领域的许多方面,并透露,尽管在平流层中占主导地位的大规模MW响应,主要的势头伴随着较小的波浪。

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